MetaSys, Université de Toulouse; INSA, UPS, INP, LISBP, 135 Avenue de Rangueil, F-31077, Toulouse, France; INRA, UMR792, Ingénierie des Systèmes Biologiques et des Procédés, F-31400, Toulouse, France; CNRS, UMR5504, F-31400, Toulouse, France.
Biotechnol Bioeng. 2014 Jan;111(1):202-8. doi: 10.1002/bit.24997. Epub 2013 Sep 18.
The growing demand for (13) C-metabolic flux analysis ((13) C-MFA) in the field of metabolic engineering and systems biology is driving the need to rationalize expensive and time-consuming (13) C-labeling experiments. Experimental design is a key step in improving both the number of fluxes that can be calculated from a set of isotopic data and the precision of flux values. We present IsoDesign, a software that enables these parameters to be maximized by optimizing the isotopic composition of the label input. It can be applied to (13) C-MFA investigations using a broad panel of analytical tools (MS, MS/MS, (1) H NMR, (13) C NMR, etc.) individually or in combination. It includes a visualization module to intuitively select the optimal label input depending on the biological question to be addressed. Applications of IsoDesign are described, with an example of the entire (13) C-MFA workflow from the experimental design to the flux map including important practical considerations. IsoDesign makes the experimental design of (13) C-MFA experiments more accessible to a wider biological community. IsoDesign is distributed under an open source license at http://metasys.insa-toulouse.fr/software/isodes/
(13)C 代谢通量分析((13)C-MFA)在代谢工程和系统生物学领域的需求不断增长,这推动了人们对合理化昂贵且耗时的(13)C 标记实验的需求。实验设计是提高从一组同位素数据中计算通量数量和通量值精度的关键步骤。我们介绍了 IsoDesign,这是一款软件,通过优化标签输入的同位素组成,可以最大化这些参数。它可以应用于使用广泛的分析工具(MS、MS/MS、(1)H NMR、(13)C NMR 等)单独或组合进行的(13)C-MFA 研究。它包括一个可视化模块,可以直观地根据要解决的生物学问题选择最佳的标签输入。描述了 IsoDesign 的应用,并以一个从实验设计到通量图的完整(13)C-MFA 工作流程为例,包括重要的实际考虑因素。IsoDesign 使更广泛的生物学界更容易进行(13)C-MFA 实验的实验设计。IsoDesign 以开源许可证的形式发布,网址为 http://metasys.insa-toulouse.fr/software/isodes/